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羰基二异硫氰酸酯的旋转构象异构体和核自旋异构体。

Rotational conformers and nuclear spin isomers of carbonyl diisothiocyanate.

作者信息

Gougoula Eva, Pfeiffer Jonathan, Schnell Melanie, Tambornino Frank

机构信息

Deutsches-Elektronen Synchrotron DESY, Notkestr. 85, 22607 Hamburg, Germany.

Fachbereich Chemie, Philipps-Universität Marburg, Hans-Meerwein-Straße 4, 35043 Marburg, Germany.

出版信息

Phys Chem Chem Phys. 2024 Oct 9;26(39):25678-25687. doi: 10.1039/d4cp02226b.

Abstract

Nuclear spin isomers of molecules play a pivotal role in our understanding of quantum mechanics and can have significant implications for various fields. In this work, we report the isolation and characterization of stable nuclear spin isomers as well as conformational isomers of a reactive compound, namely carbonyl diisothiocyanate. It can exist as three rotational conformers, two of which, the - and -, were observed in a pulsed supersonic jet by chirped pulse Fourier transform microwave spectroscopy in the 2-12 GHz frequency region. The rotational spectra of two distinct nuclear spin isomers of --carbonyl diisothiocyanate, and , were recorded and analyzed. Experimental molecular rotational parameters for the identified rotational and nuclear spin isomers were determined, including rotational constants, centrifugal distortion constants, and nuclear quadrupole coupling constants. The two nuclear spin isomers are distinguished by unique hyperfine splitting signatures in their rotational spectra as an outcome of their different nuclear spin states. The relative abundances of the two observed conformers in the gas phase were estimated from the intensity of their rotational transitions. Following detection of singly substituted rare isotopologues of the - conformer, a partial substitution () structure was determined.

摘要

分子的核自旋异构体在我们对量子力学的理解中起着关键作用,并且可能对各个领域产生重大影响。在这项工作中,我们报告了一种反应性化合物——羰基二异硫氰酸酯的稳定核自旋异构体以及构象异构体的分离和表征。它可以以三种旋转构象存在,其中两种,即 - 和 -,在2 - 12 GHz频率区域通过啁啾脉冲傅里叶变换微波光谱在脉冲超声速射流中被观测到。记录并分析了 -- 羰基二异硫氰酸酯的两种不同核自旋异构体 和 的旋转光谱。确定了所识别的旋转异构体和核自旋异构体的实验分子旋转参数,包括旋转常数、离心畸变常数和核四极耦合常数。这两种核自旋异构体因其不同的核自旋状态,在其旋转光谱中具有独特的超精细分裂特征而得以区分。根据它们旋转跃迁的强度估计了气相中两种观测到的构象异构体的相对丰度。在检测到 - 构象异构体的单取代稀有同位素异构体后,确定了一种部分取代()结构。

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